首页> 美国卫生研究院文献>Nutrients >A Novel Combination of Vitamin C Curcumin and Glycyrrhizic Acid Potentially Regulates Immune and Inflammatory Response Associated with Coronavirus Infections: A Perspective from System Biology Analysis
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A Novel Combination of Vitamin C Curcumin and Glycyrrhizic Acid Potentially Regulates Immune and Inflammatory Response Associated with Coronavirus Infections: A Perspective from System Biology Analysis

机译:维生素C姜黄素和甘草酸的新型组合潜在地调节与冠状病毒感染相关的免疫和炎症反应:从系统生物学分析的角度

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摘要

Novel coronaviruses (CoV) have emerged periodically around the world in recent years. The recurrent spreading of CoVs imposes an ongoing threat to global health and the economy. Since no specific therapy for these CoVs is available, any beneficial approach (including nutritional and dietary approach) is worth investigation. Based on recent advances in nutrients and phytonutrients research, a novel combination of vitamin C, curcumin and glycyrrhizic acid (VCG Plus) was developed that has potential against CoV infection. System biology tools were applied to explore the potential of VCG Plus in modulating targets and pathways relevant to immune and inflammation responses. Gene target acquisition, gene ontology and Kyoto encyclopedia of genes and genomes (KEGG) pathway enrichment were conducted consecutively along with network analysis. The results show that VCG Plus can act on 88 hub targets which are closely connected and associated with immune and inflammatory responses. Specifically, VCG Plus has the potential to regulate innate immune response by acting on NOD-like and Toll-like signaling pathways to promote interferons production, activate and balance T-cells, and regulate the inflammatory response by inhibiting PI3K/AKT, NF-κB and MAPK signaling pathways. All these biological processes and pathways have been well documented in CoV infections studies. Therefore, our findings suggest that VCG Plus may be helpful in regulating immune response to combat CoV infections and inhibit excessive inflammatory responses to prevent the onset of cytokine storm. However, further in vitro and in vivo experiments are warranted to validate the current findings with system biology tools. Our current approach provides a new strategy in predicting formulation rationale when developing new dietary supplements.
机译:近年来,新型冠状病毒(CoV)在世界各地定期出现。 CoV的反复传播对全球健康和经济构成了持续威胁。由于没有针对这些CoV的特异性疗法,因此任何有益的方法(包括营养和饮食方法)都值得研究。基于营养素和植物营养素研究的最新进展,开发了一种新型的维生素C,姜黄素和甘草酸组合(VCG Plus),具有抗冠状病毒感染的潜力。应用系统生物学工具来探索VCG Plus在调节与免疫和炎症反应相关的靶标和途径中的潜力。连续进行了基因靶标获取,基因本体论和基因和基因组京都百科全书(KEGG)途径富集以及网络分析。结果表明,VCG Plus可以作用于88个集线器目标,这些目标密切相关并与免疫和炎症反应相关。特别地,VCG Plus具有通过作用于NOD样和Toll样信号通路来调节先天免疫应答的潜力,从而通过抑制PI3K / AKT,NF-κB来促进干扰素的产生,激活和平衡T细胞以及调节炎症反应。和MAPK信号通路。所有这些生物学过程和途径均已在冠状病毒感染研究中得到了充分证明。因此,我们的发现表明,VCG Plus可能有助于调节免疫应答以对抗CoV感染,并抑制过度的炎症反应以预防细胞因子风暴的发作。但是,需要进行进一步的体外和体内实验,以使用系统生物学工具验证当前的发现。在开发新的膳食补充剂时,我们当前的方法提供了一种预测配方原理的新策略。

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